低轮廓,鞋型踝关节矫形器与主动可变踝关节刚度通过钢丝织物压缩机制。

IF 3.9 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY
Eunbin Choe, Junyoung Moon, Jaewook Ryu, Seungtae Yang, Alireza Nasirzadeh, Sejin Kong, Youngsuk Choi, Giuk Lee
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引用次数: 0

摘要

急性踝关节扭伤经常导致慢性踝关节不稳定和肌肉萎缩,这就需要对踝足矫形器(AFOs)进行实时刚度调节。主动可变压缩鞋(AVC-Shoes)是一种踝关节支撑系统,其灵感来自于“脚跟锁定胶带”技术,该系统采用金属丝织物压缩机制,在步态周期的关键时刻选择性地使踝关节僵硬。实验结果证实,AVC-Shoes在所有方向上实现可变脚踝刚度,显示背屈和跖屈刚度范围分别高达8.3和5.9 Nm/rad。此外,涉及三名健康参与者的初步人体测试显示,主动压缩模式下推离阶段的腓肠肌活动明显高于支撑模式(19%)。通过选择性地增加脚跟撞击时的硬度,AVC-Shoes代表了下一代afo的一个有希望的进步,能够稳定脚踝,同时防止肌肉萎缩,这与长时间使用支架有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Profile, Shoe-Type Ankle-Foot Orthosis with Active Variable Ankle Stiffness via Wire-Fabric Compression Mechanism.

Acute ankle sprains frequently lead to chronic ankle instability and muscle atrophy by causing immobilization, which necessitates real-time stiffness modulation for ankle-foot orthoses (AFOs). This paper proposes Active Variable Compression Shoes (AVC-Shoes), an ankle support system inspired by the "heel-lock taping" technique, which employs a wire-fabric compression mechanism to selectively stiffen ankle joints at crucial points in the gait cycle. The experimental results confirmed that AVC-Shoes achieve variable ankle stiffness in all directions, demonstrating dorsiflexion and plantarflexion stiffness ranges of up to 8.3 and 5.9 Nm/rad, respectively. Additionally, preliminary human testing involving three healthy participants revealed that the gastrocnemius muscle activity during the push-off phase in the active compression mode was significantly higher (by 19%) than that in the brace mode. By selectively increasing stiffness at heel strikes, AVC-Shoes represent a promising advancement toward next-generation AFOs capable of stabilizing the ankle while preventing muscle atrophy, which is associated with prolonged brace use.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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